English

Experimental investigation of practical unforgeable quantum money

Quantum Physics 2018-02-01 v3

Abstract

Wiesner's unforgeable quantum money scheme is widely celebrated as the first quantum information application. Based on the no-cloning property of quantum mechanics, this scheme allows for the creation of credit cards used in authenticated transactions offering security guarantees impossible to achieve by classical means. However, despite its central role in quantum cryptography, its experimental implementation has remained elusive because of the lack of quantum memories and of practical verification techniques. Here, we experimentally implement a quantum money protocol relying on classical verification that rigorously satisfies the security condition for unforgeability. Our system exploits polarization encoding of weak coherent states of light and operates under conditions that ensure compatibility with state-of-the-art quantum memories. We derive working regimes for our system using a security analysis taking into account all practical imperfections. Our results constitute a major step towards a real-world realization of this milestone protocol.

Keywords

Cite

@article{arxiv.1705.01428,
  title  = {Experimental investigation of practical unforgeable quantum money},
  author = {Mathieu Bozzio and Adeline Orieux and Luis Trigo Vidarte and Isabelle Zaquine and Iordanis Kerenidis and Eleni Diamanti},
  journal= {arXiv preprint arXiv:1705.01428},
  year   = {2018}
}

Comments

10 pages, 5 figures